Institute of Nuclear Physics Polish Academy of Sciences, 31-342 Krakow, Poland.
SOLARIS National Synchrotron Radiation Centre, Jagiellonian University, 30-392 Krakow, Poland.
Int J Mol Sci. 2023 Sep 5;24(18):13693. doi: 10.3390/ijms241813693.
Synthetic opals, a composition of homogeneous silica spheres in the mesoscale size range, have attracted the attention of scientists due to their favorable chemical and physical properties. Their chemical inertness and stability, biocompatibility, homogeneity, elevated specific surface area, and ease of functionalization of their surfaces make them a versatile nanotool. In the present study, the Stöber process was used to investigate the effect of parameters, such as reagent concentration and synthesis temperature, on the resulting silica particle size and structure. The optimal conditions for successfully obtaining homogeneous particles in the mesoscale range with high reproducibility were investigated. Several synthesis procedures and their dependence on the reaction temperature were presented to allow the selection of the assumed diameter of silica spheres. The numerous samples obtained were examined for size, homogeneity, structure, and specific surface area. On the basis of specific surface area measurements and nuclear magnetic resonance studies, the internal hierarchical structure of the spherical silica was confirmed as consisting of a solid core and layers of secondary spheres covered by a solid shell. Structural studies (X-ray Spectroscopy, X-ray Absorption Near-Edge Structure, and nuclear magnetic resonance), together with infrared vibrational spectroscopy, showed no dependence of the structure of the obtained mesospheres on the concentration of reagents and the size of the obtained particles.
合成蛋白石是一种中尺度范围内均匀的二氧化硅球体组成的物质,由于其优良的化学和物理性质,引起了科学家们的关注。其化学惰性和稳定性、生物相容性、均一性、较高的比表面积以及表面易于功能化,使它们成为一种多功能的纳米工具。在本研究中,使用 Stöber 法研究了试剂浓度和合成温度等参数对所得二氧化硅颗粒尺寸和结构的影响。研究了在中尺度范围内成功获得具有高重现性的均匀颗粒的最佳条件。提出了几种合成程序及其对反应温度的依赖性,以允许选择假定的二氧化硅球的直径。对获得的大量样品进行了尺寸、均匀性、结构和比表面积的检查。基于比表面积测量和核磁共振研究,证实了球形二氧化硅的内部分级结构由固体核和覆盖有固体壳的次级球体层组成。结构研究(X 射线光谱学、X 射线吸收近边结构和核磁共振)以及红外振动光谱学表明,所获得的介球体的结构不受试剂浓度和所获得颗粒尺寸的影响。